首页> 外文期刊>Journal of molecular catalysis, B. Enzymatic >Production, purification and immobilization of pectinase from Aspergillus ibericus onto functionalized nanoporous activated carbon (FNAC) and its application on treatment of pectin containing wastewater
【24h】

Production, purification and immobilization of pectinase from Aspergillus ibericus onto functionalized nanoporous activated carbon (FNAC) and its application on treatment of pectin containing wastewater

机译:从曲霉属植物中的果胶酶的生产,纯化和固定在官能化纳米多孔活性炭(FNAc)上的应用及其在含废水果胶的应用

获取原文
获取原文并翻译 | 示例
       

摘要

The fungal strain Aspergillus ibericus was isolated from food waste for the production of pectinase. In this study response surface methodology (RSM) was employed to determine optimum conditions for the production of pectinase from citrus pectin. The optimum conditions for the production of pectinase were found to be pH, 4.0; temperature, 40 degrees C; incubation time, 120 h and substrate concentration (Citrus Pectin), 2% (w/v). The maximum activity of pectinase at optimum conditions was found to be 69.9 U mL(-1). The purification by DEAE-Cellulose increased the specific activity of pectinase by about 10.1 fold from 64 to 650 U mg(-1) protein. The molecular weight of the purified pectinase was found to be 41 kDa and 43 kDa. The purified pectinase was immobilized onto functionalized nanoporous activated carbon (FNAC), the maximum immobilization capacity of pectinase onto FNAC was found to be 3360 U g(-1) at optimum immobilization conditions; time, 150 min; pH, 5.0; temperature, 35 degrees C and initial concentration of pectinase, 52 x 10(3) U (80 mg) L-1. The immobilized pectinase showed better thermal and storage stability than free pectinase. The immobilization of pectinase onto FNAC obeyed the Freundlich isotherm model. The immobilization of pectinase onto FNAC was confirmed by FT-IR, XRD, TGA, DSC and SEM analyses. The pectinase immobilized FNAC packed bed column reactor was used for the treatment of pectin containing wastewater under continuous mode. The maximum treatment efficiency for citrus pectin in synthetic wastewater was observed to be 82% at operating conditions: Hydraulic retention time, 180 min; pH, 5.0 and citrus pectin concentration 1% (w/v). Further, the citrus processing industrial wastewater was treated in pectinase immobilized FNAC packed bed column reactor and the system showed 94% of pectin treatment. The treatment of pectin in wastewater obeyed pseudo second order rate kinetic treatment model. The treatment of pectin in wastewater was confirmed by UV-vis spectroscopy and FT-IR spectrophotometer analyses. (C) 2016 Elsevier B.V. All rights reserved.
机译:真菌菌株曲霉属植物胰岛素脂肪株与食物废物中分离出来生产果胶酶。在该研究中,使用响应表面方法(RSM)来确定来自柑橘果胶的果胶酶的最佳条件。发现果胶酶生产的最佳条件是pH,4.0;温度40℃;孵育时间,120h和底物浓度(柑橘果胶),2%(w / v)。发现果胶酶在最佳条件下的最大活性为69.9uml(-1)。 DEAE-纤维素的纯化将果胶酶的比活性增加约10.1倍,从64-650毫升(-1)蛋白。发现纯化的果胶酶的分子量为41kDa和43kDa。将纯化的果胶酶固定在官能化的纳米多孔活性炭(FnAc)上,在最佳固定条件下发现果胶酶的最大固定能力在FNAc上为3360 u g(-1);时间,150分钟; pH,5.0;温度,35摄氏度和果胶酶的初始浓度,52×10(3)U(80mg)L-1。固定化果胶酶显示出比游离果胶酶更好的热和储存稳定性。果胶酶固定到FNAC上的遵守Freundlich等温模型。通过FT-IR,XRD,TGA,DSC和SEM分析证实了果胶酶对FNAc上的固定化。将果胶酶固定化的FNAc包装床柱反应器用于在连续模式下处理含有废水的果胶。在操作条件下观察到合成废水中柑橘果胶的最大处理效率为82%:液压保留时间,180分钟; pH,5.0和柑橘果胶浓度1%(w / v)。此外,柑橘加工工业废水在果胶酶固定的FNAc包装床柱反应器中处理,系统显示出94%的果胶处理。废水中果胶的治疗服从伪二阶率动力学治疗模型。通过UV-Vis光谱和FT-IR分光光度计分析证实了废水中果胶的处理。 (c)2016年Elsevier B.v.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号